• Repositorio Institucional Universidad de Pamplona
  • Trabajos de pregrado y especialización
  • Facultad de Ingenierías y Arquitectura
  • Ingeniería Ambiental
  • Por favor, use este identificador para citar o enlazar este ítem: http://repositoriodspace.unipamplona.edu.co/jspui/handle/20.500.12744/8447
    Registro completo de metadatos
    Campo DC Valor Lengua/Idioma
    dc.contributor.authorGonzález Salcedo, Jeisson.-
    dc.date.accessioned2024-06-06T22:49:30Z-
    dc.date.available2019-10-12-
    dc.date.available2024-06-06T22:49:30Z-
    dc.date.issued2020-
    dc.identifier.citationGonzález Salcedo, J. (2019). Contactores biológicos rotativos para el tratamiento de aguas residuales [Trabajo de Grado Pregrado, Universidad de Pamplona]. Repositorio Hulago Universidad de Pamplona. http://repositoriodspace.unipamplona.edu.co/jspui/handle/20.500.12744/8447es_CO
    dc.identifier.urihttp://repositoriodspace.unipamplona.edu.co/jspui/handle/20.500.12744/8447-
    dc.descriptionLos contactores biológicos rotativos (RBC), también conocidos como biodiscos, es un reactor que opera en condiciones aerobias, diseñado para el tratamiento secundario de aguas residuales domesticas e industriales. Este sistema lleva a cabo un proceso de tratamiento biológico, mediante cultivos de microorganismos fijos o adheridos a los discos rotativos de plástico ensamblados sobre un eje horizontal, los cuales funcionan como el soporte formando en ellos la biopelicula, siendo esta la de mayor importancia para el desarrollo del sistema, al instante en que la biopelicula hace la transformación de la materia orgánica debido a la acción de los microorganismos que la forman, se puede efectuar que a medida que el afluente ingrese al reactor este puede hacer que gradualmente se modifique la clasificacion microbiológica. Teniendo en cuenta otros factores que influyen sobre la biopelicula que están asociados a la composición química del influente a tratar como carga orgánica, disponibilidad de oxígeno, temperatura, pH y físicos como color, espesor, turbiedad y densidad son considerados importantes para predecir la eficiencia teniendo en cuenta las características del agua a tratar.es_CO
    dc.description.abstractThe rotating biological contactors (RBC), also known as biodiscs, is a reactor that operates under aerobic conditions, designed for the secondary treatment of domestic and industrial wastewater. This system carries out a process of biological treatment, by means of cultures of fixed microorganisms and adhered to the rotating discs of plastic assembled on a horizontal axis, which work as the support forming in them the biopelicula, being this one of greater importance for the development of the system, at the moment in which the biopelicula makes the transformation of organic matter due to the action of the microorganisms that form it, it can be done that as the tributary enters the reactor it can gradually change the microbiological classification . Taking into account other factors that influence the biopelicula that are associated to the chemical composition of the influent to treat as organic load, oxygen availability, temperature, pH and physicists as color, thickness, turbidity and density are considered important to predict the efficiency having consider the characteristics of the water to be treated.es_CO
    dc.format.extent119es_CO
    dc.format.mimetypeapplication/pdfes_CO
    dc.language.isoeses_CO
    dc.publisherUniversidad de Pamplona - Facultad de Ingenierías y Arquitectura.es_CO
    dc.subjectAgua residual.es_CO
    dc.subjectBiopelicula.es_CO
    dc.subjectContactores biológicos rotativos.es_CO
    dc.subjectDepuración de materia orgánica.es_CO
    dc.subjectMicroorganismos.es_CO
    dc.subjectTratamiento biológico.es_CO
    dc.titleContactores biológicos rotativos para el tratamiento de aguas residuales.es_CO
    dc.typehttp://purl.org/coar/resource_type/c_7a1fes_CO
    dc.date.accepted2019-08-12-
    dc.relation.referencesA. Ebrahimi, M. A. (2009). Dairy Wastewater Treatment Using Three-Stage Rotating Biological Contactor (Nrbc). International journal of engineeerng Transactions.es_CO
    dc.relation.referencesA. Galvan, P. U. (2000). Characterization of filamentous microorganisms in rotating biological contactor biofilms of wastewater treatment plants. Bioprocess Engineering, 257–260.es_CO
    dc.relation.referencesA. Hippen, C. H.-H. (2001). Six years' practical experience with aerobic/anoxic deammonification in biofilm systems. Water Science & Technology, 39-48.es_CO
    dc.relation.referencesA. Kapoor, A. K. (2003). Use of a rotating biological contactor for removal of ammonium from mining effluents. The European Journal of Mineral Processing and Environmental Protection, 88-100.es_CO
    dc.relation.referencesA. TAWFIK, H. T. (2006). Sewage Treatment in a Rotating Biological Contactor (RBC) System. Water, Air, and Soil Pollution, 275–289.es_CO
    dc.relation.referencesA.Mohseni-Bandpi, D. (1996). Nitrate removal from groundwater using an anoxicaerobic rotating biological contactor. Water Science and Technology, 323-330.es_CO
    dc.relation.referencesAbzazou, T. H.-C. (2015). Assessment of total bacterial cells in extended aeration activated. Environmental Science and Pollution Research, 11446–11455.es_CO
    dc.relation.referencesAhmady, A. K. (2005). Effect of Organic Loading on Rotating Biological Contactor Efficiency. Environmental Research and Public Health, 469-477..es_CO
    dc.relation.referencesAhmed Tawfik, B. K.-G. (2004). Physico-chemical factors affecting the E: coli removal in a rotating biological contactor (RBC) treating UASB effluent . Water Research , 1081–1088.es_CO
    dc.relation.referencesAlemzadeh, I. M. (2001). Biodegradation of toluene by an attached biofilm in a rotating biological contactor. Process Biochemistry, 707–711.es_CO
    dc.relation.referencesAlemzadeh, I. V. (2002). Phenol biodegradation by rotating biological contactor. Biochemical Engineering Journal, 19-23.es_CO
    dc.relation.referencesMohle, R. B., & Langemann, T. M. (2007). Structure and Shear Strength of Microbial Biofilms as Determined With Confocal Laser Scanning Microscopy and Fluid Dynamic Gauging Using a Novel Rotating Disc Biofilm Reactor. Biotechnology and Bioengineering, 747–755.es_CO
    dc.relation.referencesMukherji, S., & Chavan, A. (2012). Treatment of aqueous effluents containing nonaqueous phase liquids in rotating biological contactor with algal bacterial biofilm. Chemical Engineering Journal, 459–470.es_CO
    dc.relation.referencesNajafpour, G. A. (2006). Performance of a three-stage aerobic RBC reactor in food canning wastewater treatment. Biochemical Engineering Journal, 297–302.es_CO
    dc.relation.referencesNajafpour, G. H. (2005). Effect of organic loading on performance of rotating biological contactors using Palm Oil Mill effluents. Process Biochemistry, 2879–2884.es_CO
    dc.relation.referencesNANCY E. KINNER, D. L. (1983). Light and Electron Microscopic Studies of Microorganisms Growing in Rotating Biological Contactor Biofilms. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1659-1669.es_CO
    dc.relation.referencesNovotny, C. N. (2012). The use of the fungus Dichomitus squalens for degradation in rotating biological contactor conditions. Bioresource Technology, 241–246.es_CO
    dc.relation.referencesNowak, O. (2000). Upgrading of wastewater treatment plants equipped with rotating biological contactors to nitrification and P removal. Water Sci Technol, 145- 153.es_CO
    dc.relation.referencesOdegaard, H., & Rusten, B. (1980). NITROGEN REMOVAL IN ROTATING BIOLOGICAL CONTACTORS WITHOUT THE USE OF EXTERNAL CARBON SOURCE. 71-76es_CO
    dc.relation.referencesOkabe, S. H. (1999). In Situ Analysis of Nitrifying Biofilms as Determined by In Situ Hybridization and the Use of Microelectrodes. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 3182–3191.es_CO
    dc.relation.referencesOkabe, S. K. (1996). Spatial Microbial Distributions of Nitrifiers and Heterotrophs in Mixed-Population Biofilms. Biotechnology and Bioengineering, 24-35.es_CO
    dc.relation.referencesAlleman, J. E. (1982). SCANNING ELECTRON MICROSCOPE EVALUATION OF ROTATING BIOLOGICAL CONTACTOR BIOFILM. Water Res., 543-550.es_CO
    dc.relation.referencesOrandi, S. D. (2012). Biofilm establishment and heavy metal removal capacity of an indigenous mining algal-microbial consortium in a photo-rotating biological contactor. J Ind Microbiol Biotechnol, 1321–1331.es_CO
    dc.relation.referencesOuyang, C. F. (1981). CHARACTERISTICS OF ROTATING BIOLOGICAL CONTACTOR (RBC) SLUDGES. Journal of the Chinese Institute of Engineers, 53-60.es_CO
    dc.relation.referencesP. Griffin and G.E. Findlay. (2000). Process and engineering improvements to rotating biological contactor design. Water Science and Technology, 137-144.es_CO
    dc.relation.referencesP. Nahid, M. V. (2001). Treatment of bakers yeast wastewater with a Biopack system. Process Biochemistry, 447-451.es_CO
    dc.relation.referencesP. Teixeira, R. O. (2000). Denitrification by Alcaligenes denitrificans in a closed rotating biological contactor. Biotechnology Letters, 1789–1792.es_CO
    dc.relation.referencesPakshirajan, K., & Kheria, S. (2012). Continuous treatment of coloured industry wastewater using immobilized Phanerochaete chrysosporium in a rotating biological contactor reactor. Journal of Environmental Management, 118-123.es_CO
    dc.relation.referencesPartha Sarathi Majumder, S. G. (2007). Removal of chlorophenols in sequential anaerobic–aerobic reactors. Bioresource Technology , 118–129.es_CO
    dc.relation.referencesPathan, A. A. (2011). Preliminary Study of Greywater Treatment through Rotating Biological Contactor. JOURNAL OF ENGINEERING & TECHNOLOGY, 531- 538.es_CO
    dc.relation.referencesPatwardhan., A. W. (2003). Rotating Biological Contactors: A Review. Ind. Eng. Chem. Res., 2035-2051.es_CO
    dc.relation.referencesPearce, C. J. (2003). The removal of colour from textile wastewater using whole bacterial cells: a review. Dyes and Pigments, 179-196.es_CO
    dc.relation.referencesAllen, k. (1929). Sewage Disposal Bulletin. City of New York.es_CO
    dc.relation.referencesPebriyanti, G. R. (2016). Sludge Dewatering Process Control using Principal Component Analysis (PCA) and Partial Least Square (PLS). Indonesian Journal of Science & Technology, 61-73.es_CO
    dc.relation.referencesPoon, C. P.-L. (1979). Factors Controlling Rotating Biological Contactor Performance. Water Pollution Control Federation, 601-611.es_CO
    dc.relation.referencesPopel. (1964). Assembly, dismantling, performance and design of rotating biological contactor, Switzerland Hyfol. (Translation: English).es_CO
    dc.relation.referencesPradeep N.V, A. H. (2011). Biodegradation of Phenol using Rotating Biological Contactor . International Journal of Environmental Sciences, 105-113.es_CO
    dc.relation.referencesPynaert, K. B. (2004). Start-up of Autotrophic Nitrogen Removal Reactors via Sequential Biocatalyst Addition. Environ. Sci. Technol., 1228-1235.es_CO
    dc.relation.referencesRadwan, K., & Ramanujam, T. (1997). Studies on organic removal of 2,4- dichlorophenol wastewaters using a modified RBC. Bioprocess Engineering, 219–223.es_CO
    dc.relation.referencesRajbir Singh, D. P. (2006). Biofilms: implications in bioremediation. TRENDS in Microbiology, 389–397.es_CO
    dc.relation.referencesRamsay, J. M. (2006). Amaranth decoloration by Trametes versicolor in a rotating biological contacting reactor. J Ind Microbiol Biotechnol, 791-795.es_CO
    dc.relation.referencesRana, S. N. (2018). Removal of Organic pollutant with the use of Rotating Biological Contactor. Materials Today: Proceedings, 4218–4224es_CO
    dc.relation.referencesRittmann, B. E., & McCarty, P. L. (2001). Environmental Biotechnology: Principles and Applications, 4th ed. McGraw-Hill Higher Education. New York.es_CO
    dc.relation.referencesAmorim, C. L. (2013). Bioaugmentation for treating transient 4-fluorocinnamic acid shock loads in a rotating biological contactor. Bioresource Technology, 554- 562.es_CO
    dc.relation.referencesRittmann, B. S. (1983). Temperature Effects on Oxygen Transfer to Rotating Biological Contactors. Water Pollution Control Federation, 270-277.es_CO
    dc.relation.referencesRobinson, T. G. (2001). Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative. Bioresource Technology, 247-255.es_CO
    dc.relation.referencesRodgers, M., & Zhan, X. M. (2003). Moving-medium biofilm reactors. Environmental Science and Bio/Technology, 213–224.es_CO
    dc.relation.referencesSafa, M. A. (2014). Biodegradability of oily wastewater using rotating biological contactor combined with an external membrane. Journal of Environmental Health Science and Engineering, 12(1), 117.es_CO
    dc.relation.referencesSaikaly, P., & Ayoub, G. M. (2003). AMMONIA NITROGEN REMOVAL IN STEPFEED ROTATING BIOLOGICAL CONTACTORS. Water, Air, and Soil Pollution, 177–191.es_CO
    dc.relation.referencesSalvado, H. A. (2004). Dynamics of nematodes in a high organic loading rotating biological contactors. Water Research, 2571-2578.es_CO
    dc.relation.referencesSatoh, H. S. (2003). Evaluation of the impact of bioaugmentation and biostimulation byin situ hybridization and microelectrode. Water Research, 2206–2216.es_CO
    dc.relation.referencesSatoshi Okabe, T. K. (2005). Fate of 14C-Labeled Microbial Products Derived from Nitrifying Bacteria in Autotrophic Nitrifying Biofilms. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 3987–3994.es_CO
    dc.relation.referencesSchwingle TA, L. A. (2005). Refining applications. Hydrocarbon Engineering, January.es_CO
    dc.relation.referencesSimm, R. (1988). ENHANCED BIOLOGICAL PHOSPHORUS REMOVAL USING A SEQUENCING BATCH RBC. THE UNIVERSITY OF BRITISH COLUMBIA, 1-117.es_CO
    dc.relation.referencesAndreadakis, A. D. (1987). DESIGN OF MULTISTAGE ROTATING BIOLOGICAL CONTACTORS. J. Environ. Eng, 199-205.es_CO
    dc.relation.referencesSimonich, S. L., Federle, T. W., Eckhoff, W. S., Rottiers, A., Webb, S., Sabaliunas, D., & Wolf, W. D. (2002). Removal of Fragrance Materials during U.S. and European Wastewater Treatment. Environ. Sci. Technol., 2839-2847.es_CO
    dc.relation.referencesSingh, A. V., Vyas, V., Patil, R., Sharma, V., Scopelliti, P. E., Bongiorno, G., . . . Milani, P. (2011). Quantitative Characterization of the Influence of the Nanoscale Morphology of Nanostructured Surfaces on Bacterial Adhesion and Biofilm Formation. PLoS ONE 6, e25029, 1-12.es_CO
    dc.relation.referencesSirianuntapiboon, & Chumlaong, S. S. (2013). Effect of Ni2+ and Pb2+ on the efficiency of packed cage rotating biological contactor system. Journal of Environmental Chemical Engineering, 233–240.es_CO
    dc.relation.referencesSirianuntapiboon, S. (2006). Treatment of wastewater containing Cl2 residue by packed cage rotating biological contactor (RBC) system. Bioresource Technology, 1735–1744.es_CO
    dc.relation.referencesSpengel, D. B., & Dzombak, D. A. (1992). Biokinetic modeling and scale-up considerations for rotating biological contactors. Water Environment Research, 223–235.es_CO
    dc.relation.referencesSteiner, C. (1997). The Biological Approach to the Rotating Disc Process. WSE Publication No. 695,. 1-5.es_CO
    dc.relation.referencesStenstrom, R. T. (1979). Use of the Rotating Biological Contactor for Appropriate Technology Wastewater Treatment. Appropriate Technology Wastewater Treatment, 1-70.es_CO
    dc.relation.referencesStephenson, D., & Stephenson, T. (1992). Bioaugmentation for enhancing biological wastewater treatment. Biotechnology Advances, 549-559es_CO
    dc.relation.referencesStephenson, T. E. (2013). Media surface properties and the development of nitrifying biofilms in mixed cultures for wastewater treatment. Process Safety and Environmental Protection, 321–324es_CO
    dc.relation.referencesStewart, P. S. (2003). Diffusion in Biofilms. J. Bacteriol, 1485-1491.es_CO
    dc.relation.referencesArvin, E., & Harremoes, P. (1990). CONCEPTS AND MODELS FOR BIOFILM REACTOR PERFORMANCE. Wal. Sci. Tech., 171-192.es_CO
    dc.relation.referencesStewart, S. P., & Franklin, M. J. (2008). Physiological heterogeneity in biofilms. Nature Reviews Microbiology, 199 - 210.es_CO
    dc.relation.referencesSuntud Sirianuntapiboon, C. C. (2007). Packed cage rotating biological contactor system for treatment of cyanide wastewater. Tecnología Bioambiental, 266- 272es_CO
    dc.relation.referencesSurampalli, R. Y., & Baumann, E. R. (1997). ROLE OF SUPPLEMENTAL AERATION IN IMPROVING OVERLOADED FIRST-STAGE RBC PERFORMANCE. Water, Air, and Soil Pollution, 1-15.es_CO
    dc.relation.referencesTawfik, A. K. (2002). Treatment of anaerobically pre-treateddomestic sewage by a rotating biological contactor. Water Research, 147–155.es_CO
    dc.relation.referencesTawfik, A., & Klapwijk, A. (2010). Polyurethane rotating disc system for posttreatment of anaerobically pre-treated sewage. Journal of Environmental Management, 1183–1192.es_CO
    dc.relation.referencesTeixeira, P., & Oliveira, R. (2001). Denitrification in a closed rotating biological contactor: effect of disk submergence. Process Biochemistry, 345–349.es_CO
    dc.relation.referencesTorkian A, H. S. (2003). Posttreatment of upflow anaerobic sludge blanket-treated industrial wastewater by a rotating biological contactor. Water Environ Res, 232–237.es_CO
    dc.relation.referencesTrikoilidou, E. S. (2016). Sustainable operation of a. IOP Conference Series: Materials Science and Engineering, 161(1), 012093. .es_CO
    dc.relation.referencesTyagi, R. D. (1993). Biodegradation Of Petroleum Refinery Wastewater In A Modified Rotating Biological Contactor With Polyurethane Foam Attached To The Discs. Water. Research , 91-99 .es_CO
    dc.relation.referencesUpton, J. E. (1995). Sewage Treatment for Small Communities: the Severn Trent Approach. Water Environ, 64-71.es_CO
    dc.relation.referencesAyoub, G., & Saikaly, P. (2004). The combined effect of step-feed and recycling on RBC performance. Water Research, 3009–3016.es_CO
    dc.relation.referencesVesilind, A. (2003). In: Vesilind, P. (Ed.), Wastewater Treatment Plant Design. IWA Publishing, London,Great Britain.es_CO
    dc.relation.referencesVlaeminck, S. E., Akihiko, T., Barth, F. S., Davy, V. D., Nico, B., Verstraete, W., & Carballa, M. (2009). Nitrogen Removal from Digested Black Water by OneStage Partial Nitritation and Anammox. Environ. Sci. Technol., 5035–5041.es_CO
    dc.relation.referencesWaqas, S., & Bilad, M. R. (2019). A Review on Rotating Biological Contactors. Indonesian Journal of Science & Technology, 241-256.es_CO
    dc.relation.referencesWare, A. M. (1990). Evaluation of Alternatives to Conventional Disc Support Media for Rotating Biological Contactors. Water Science & Technology, 113-117.es_CO
    dc.relation.referencesWaskar, V. G. (2012). Review on Process, Application and Performance of Rotating Biological Contactor (RBC). International Journal of Scientific and Research Publications, 1-6.es_CO
    dc.relation.referencesWEF, & ASCE. (1998). WEF (Water Environment Federation) & ASCE (American Society of Civil Engineers) (1998) Design of municipal wastewater treatment plants, WEF Manual of practice No. 76. Alexandria and Reston, USA.es_CO
    dc.relation.referencesWeston, R. (1985). Review of Current RBC Performance and Design Procedures United States Technical Information Report PB85-180945/AS.es_CO
    dc.relation.referencesWijekoon, K. C. (2011). Effect of organic loading rate on VFA production, organic matter removal and microbial activity of a two-stage thermophilic anaerobic membrane bioreactor. Bioresource Technology , 5353-5360.es_CO
    dc.relation.referencesWilson, R. W. (1980). Scaleup in Rotating Biological Contactor Design. Water Pollution Control Federation, 610-621.es_CO
    dc.relation.referencesWindey, K. I. (2005). Oxygen-limited autotrophic nitrification–denitrification (OLAND) in a rotating biological contactor treating high-salinity wastewater. Water Research, 4512–4520.es_CO
    dc.relation.referencesBanerjee, G. (1997). Hydraulics of bench-scale rotating biological contactor. Water Research , 2500-2510.es_CO
    dc.relation.referencesWuertz, S. S. (2004). Microbial communities and their interactions in biofilm systems: an overview. Water Science and Technology, 327–336.es_CO
    dc.relation.referencesYargholi, B., & Jafari, N. (2011). Application of Rotating Biological Contactor with Packing Bed (RBCp) for Small Communities Wastewater Treatment to Be Used in Irrigation. International Journal of Water Resources and Arid Environments, 102-109es_CO
    dc.relation.referencesYeom, I.-T. N.-M.-H. (1999). Treatment of household wastewater using an intermittently aerated membrane bioreactor. Desalination, 193-203.es_CO
    dc.relation.referencesYoon, S.-H. K.-S.-T. (2004). The optimum operational condition of membrane bioreactor (MBR): Cost estimation of aeration and sludge treatment. Water Research, 37-46. .es_CO
    dc.relation.referencesYun, Z. C. (2004). Enhanced biological phosphorus removal in RBC with SBR. Water Science and Technology, 121-130.es_CO
    dc.relation.referencesZahid, J. W., & Ganczarczyk. (1994). Fractal properties of the RBC biofilm structure. Water Sci. Technol, 271–279.es_CO
    dc.relation.referencesBatchelor, S. E., Cooper, M., Chhabra, S. R., Glover, L. A., Stewart, G. S., Williams, P., & Prosser, J. I. (1997). Cell Density-Regulated Recovery of Starved Biofilm Populations of Ammonia-Oxidizing Bacteria. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2281–2286.es_CO
    dc.relation.referencesBatt, A. L. (2007). Comparison of the occurrence of antibiotics in four full-scale wastewater treatment plants with varying designs and operations. Chemosphere, 428-435.es_CO
    dc.relation.referencesBernard Ross, C. L. (1994). Inordinate failures of rotating biological contactor (RBC) drive shafts in wastewater contactor (RBC) drive shafts in wastewater treatment plant service worldwide. Int. J. Pres. Ves. & Piping 59, 197-209.es_CO
    dc.relation.referencesBoran Kartal, M. K. (2006). Adaptation of a freshwater anammox population to high salinity wastewater. Journal of Biotechnology, 546-553.es_CO
    dc.relation.referencesBorghi, M. D. (1985). INFLUENCE OF PROCESS VARIABLES ON THE MODELLING AND DESIGN OF A ROTATING BIOLOGICAL SURFACE. Water Res, 573-580.es_CO
    dc.relation.referencesBrazil, L. B. (2006). Performance and operation of a rotating biological contactor in a tilapia recirculating aquaculture system. Aquacultural Engineering, 261-274.es_CO
    dc.relation.referencesBrenner, R. O. (1984). Design Information on Rotating Biological Contactor. Design Technical Report No EPA-600/2-84-106. Municipal Environmental Research Laboratory, Cincinnati, OH, USA.es_CO
    dc.relation.referencesCereceda, M. M. (2001). Biofilm Communities and Operational Monitoring of a Rotating Biological Contactor System. Water, Air, and Soil Pollution, 193– 206.es_CO
    dc.relation.referencesCereceda, M. M. (2001). Confocal and Light Microscope Examination of Protozoa and Other Microorganisms in the Biofilms from a Rotating Biological Contactor Wastewater Treatment Plant. Acta Protozool, 263 - 272.es_CO
    dc.relation.referencesCereceda, M. M. (2001). Dynamics of protozoan and metazoan communities in a full scale wastewater treatment plant by rotating biological contactors. Microbiological research, 225-238.es_CO
    dc.relation.referencesChavan, A., & Mukherji, S. (2008). Dimensional analysis for modeling oxygen transfer in rotating biological contactor. Bioresource Technology, 3721-3728.es_CO
    dc.relation.referencesChavan, A., & Mukherji, S. (2010). Effect of co‐contaminant phenol on performance of a laboratory‐scale RBC with algal‐bacterial biofilm treating petroleum hydrocarbon‐rich wastewater. Chemical Technology & Biotechnology, 851– 859.es_CO
    dc.relation.referencesChen, Z. Q. (2006). Simultaneous removal of carbon and nitrogen from municipaltype synthetic wastewater using net-like rotating biological contactor (NRBC). Process Biochemistry, 2468–2472.es_CO
    dc.relation.referencesChristine Helmer, S. K. (1998). Simultaneous nitrification/denitrification in an aerobic biofilm system. Water Science and Technology, 183-187.es_CO
    dc.relation.referencesChungsying Lu, A. C.-R. (1995). Treatment of high-strength organic wastewaters using an anaerobic rotating biological contactor. Environment International, 313-323.es_CO
    dc.relation.referencesChungsying Lu, H.-C. L. (1997). Effects of disc rotational speed and submergence on the performance of an anaerobic rotating biological contactor. Environment International, 253-263es_CO
    dc.relation.referencesCoetzee, G. L. (2004). Dynamics of a microbial biofilm in a rotating biological contactor for the treatment of winery effluent. Water SA.es_CO
    dc.relation.referencesCortez, S. P. (2008). S. Cortez Æ P. Teixeira Æ R. Oliveira Æ M. Mota. Rev Environ Sci Biotechnol, 155–172.es_CO
    dc.relation.referencesCortez, S. P. (2011). Denitrification of a landfill leachate with high nitrate concentration in an anoxic rotating biological contactor. Biodegradation, 661– 671.es_CO
    dc.relation.referencesCortez, S. P. (2011). Mature landfill leachate treatment by denitrification and ozonation. Bioquimica de procesos, 148-153.es_CO
    dc.relation.referencesCostley, S., & Wallis, F. (2000). Effect of flow rate on heavy metal accumulation by rotating biological contactor (RBC) biofilms. Journal of Industrial Microbiology & Biotechnology, 244–250.es_CO
    dc.relation.referencesCostley, S., & Wallis, F. (2001). Bioremediation of heavy metals in a synthetic wastewater using a rotating biological contactor. Water Research, 3715- 3723.es_CO
    dc.relation.referencesD. Paredes, P. K. (2007). New Aspects of Microbial Nitrogen Transformations in the Context of Wastewater Treatment – A Review. Engineering in Life Sciences, 13–25.es_CO
    dc.relation.referencesDe Clippeleir, H. X. (2011). OLAND is feasible to treat sewage-like nitrogen concentrations at low hydraulic residence times. Applied Microbiology and Biotechnology, 1537–1545.es_CO
    dc.relation.referencesDe La Rosa, C., & Yu, T. (2005). Three-Dimensional Mapping of Oxygen Distribution in Wastewater Biofilms Using an Automation System and Microelectrodes. Environ. Sci. Technol., 5196-5202.es_CO
    dc.relation.referencesDemergasso S. C., P. G. (2000). ESTUDIO DE LA CINÉTICA DE BIOCONVERSIÓN DE AGUAS RESIDUALES EN LA PRODUCCIÓN DE AGUA POTABLE. Associação Brasileira de Engenharia Sanitária e Ambiental, 1-8.es_CO
    dc.relation.referencesDemergasso, C. R. (2017). From Knowledge to Best Practices in Bioleaching. Solid State Phenomena, 285-289.es_CO
    dc.relation.referencesDoman, J. (1929). Results of Operation oof Experimental Contact Filter with Partially Submerged Rotating Plate. 555-560.es_CO
    dc.relation.referencesDorota Kulikowska, T. J. (2010). Municipal landfill leachate nitrification in RBC biofilm – Process efficiency and molecular analysis of microbial structure. Bioresource Technology, 3400-3405.es_CO
    dc.relation.referencesDuque, A. F. (2011). Bioaugmentation of a rotating biological contactor for degradation of 2-fluorophenol. Bioresource Technology, 9300-9303.es_CO
    dc.relation.referencesDutta, S. E. (2007). Study of rotating biological contactor performance in wastewater treatment using multi-culture biofilm model. Water Science & Technology, 345–353.es_CO
    dc.relation.referencesEbrahimi, A. G. (2017). Evaluation of treatability of high strength wastewater in a three stage-rotating biological contactor. Journal of Environmental Engineering and Landscape management, 234-240.es_CO
    dc.relation.referencesF. Hassard, E. C. (2014). Performance of permeable media rotating reactors used for pretreatment of wastewaters. Water Science & Technology, 1926–1931.es_CO
    dc.relation.referencesFindlay, G. E. (1993). The selection and design of rotating biological contactors and reed beds for small sewage treatment plants. Engrs Wat. Marit. & Energy, 237-246.es_CO
    dc.relation.referencesFountoulakis, M. S. (2009). Pilot-scale comparison of constructed wetlands operated under high hydraulic loading rates and attached biofilm reactors for domestic wastewater treatment. Science of the Total Environment, 2996-3003.es_CO
    dc.relation.referencesFujie, K. H. (1983). Operational design and power economy of a rotating biological contactor. Water Research, 1153-1162.es_CO
    dc.relation.referencesG.Banerjee. (1997). Treatment of phenolic wastewater in RBC reactor. Water Research, 705-714.es_CO
    dc.relation.referencesG.M. Ayouba, P. S. (2004). The combined effect of step-feed and recycling on RBC performance. Water Research, 3009–3016.es_CO
    dc.relation.referencesGrady, C. J. (1999). Rotating biological. Biological wastewater treatment (págs. 907– 947). New York: Marcel Dekker.es_CO
    dc.relation.referencesGrelier, P. R.-P. (2006). Influence of sludge retention time on membrane bioreactor hydraulic performance. Desalination, 10-17.es_CO
    dc.relation.referencesGriffin, P., & Findlay, G. (2000). Process and engineering improvements to rotating biological contactor design. Water Science and Technology, 137-144.es_CO
    dc.relation.referencesGuimaraes, C. P. (2005). Continuous decolourization of a sugar refinery wastewater in a modified rotating biological contactor with Phanerochaete chrysosporium immobilized on polyurethane foam disks. Process Biochemistry, 535–540.es_CO
    dc.relation.referencesGupta, A., & Gupta, S. (2001). Simultaneous carbon and nitrogen removal from high strength domestic wastewater in an aerobic RBC biofilm. Water Research, 1714-1722.es_CO
    dc.relation.referencesGupta, S., & Bhardwaj, N. K. (2016). Advances in the Treatment of Pulp and Paper Mill Wastewater. Environmental Waste Management, 47-72.es_CO
    dc.relation.referencesH.Siegrist, S. G. (1998). Nitrogen loss in a nitrifying rotating contactor treating ammonium-rich wastewater without organic carbon. Water Science and Technology, 241-248.es_CO
    dc.relation.referencesHanhan, O. D. (2005). Evaluation of denitrification potential of rotating biological contactors for treatment of municipal wastewater. Water Science & Technology, 131–139es_CO
    dc.relation.referencesHarremoës, P., & Gönenc, I. (1983). The applicability of biofilm kinetics to rotating biological contactors. Fellbach, Germany: In: Paper presented at International EWPCA-IAWPRC Seminar.es_CO
    dc.relation.referencesHartman, H. (1960). (Translation): Investigation on the Biological Treatment of Waste Water by using Drip-Body Immersion Systems. Munich Germany.: Stuttgart reports for Urban Water Management Commission Publisher.es_CO
    dc.relation.referencesHartmann, H. (1961). Improvements in or relating to sewage plant, British patent no. 935162, T963.es_CO
    dc.relation.referencesHassard, F. J. (2015). Rotating biological contactors for wastewater treatment – A review. Process Safety and Environmental Protection, 285-306.es_CO
    dc.relation.referencesHemmati, A. D. (2012). Effect of hydraulic retention time and temperature on submerged membrane bioreactor (SMBR) performance . Korean Journal of Chemical Engineering, 369-376.es_CO
    dc.relation.referencesHidrometalica. (2019). Obtenido de Hidrometalica: https://hidrometalica.com/biodiscos/es_CO
    dc.relation.referencesHiras, D. N. (2004). Organic and nitrogen removal in a two-stage rotating biological contactor treating municipal wastewater. Bioresource Technology, 91–98.es_CO
    dc.relation.referencesHochheimer, J. N., & Wheaton, F. (1998). Biological Filters: Trickling and RBC Design. Libey GS, Timmons MB (eds) Proceedings of the 2nd international conference on recirculation Aquaculture, July 16–19. Roanoke, VA, USA, 291-318es_CO
    dc.relation.referencesHoyland, G. V. (2010). A new Approach to Nutrient Removal Using the HYBACS Process. 1-14.es_CO
    dc.relation.referencesI. Nilsson, A. M. (2006). Decolorization of synthetic and real textile wastewater by the use of white-rot fungi. Enzyme and Microbial Technology, 94-100.es_CO
    dc.relation.referencesIsrani, S. H. (2002). Phenol degradation in rotating biological contactors. J Chem Technol Biotechnol, 1050-1057.es_CO
    dc.relation.referencesJanczukowicz, W., & Klimiuk, w. (1992). The influence of the raw wastes dosing system on technological parameters of the rotating biological disc (RBD) process. Tecnología Bioambiental, 241-245.es_CO
    dc.relation.referencesJdayil, B. A.-S. (2010). Steady Rheological Properties of Rotating Biological Contactor (RBC) Sludge. J. Water Resource and Protection, 1-7.es_CO
    dc.relation.referencesJeswani, H. S. (2012). Degradation of phenolics, nitrogen-heterocyclics and polynuclear aromatic hydrocarbons in a rotating biological contactor. Bioresource Technology, 12-20.es_CO
    dc.relation.referencesKader, A. A. (2011). Studying The Efficiency Of Grey Water Treatment By Using Rotating Biological Contactors System. Fifteenth International Water Technology Conference, IWTC-15 2011.es_CO
    dc.relation.referencesKapdan, I. K. (2002). Biological decolorization of textile dyestuff containing wastewater by Coriolus versicolor in a rotating biological contactor. Enzyme and Microbial Technology, 195–199.es_CO
    dc.relation.referencesKenneth E. Neu. (1994). Upgrading of rotating biological contactor (RBC) systems to achieve higher effluent quality, including biological nutrient enrichment and reduction techniques. Water Science and Technology, 197-206.es_CO
    dc.relation.referencesKhan, M. C. (2013). Attachment surface energy effects on nitrification and estrogen removal rates by biofilms for improved wastewater treatment. water research, 2190-2198.es_CO
    dc.relation.referencesKindaichi, T. T. (2004). Ecophysiological Interaction between Nitrifying Bacteria and Heterotrophic Bacteria in Autotrophic Nitrifying Biofilms as Determined by Microautoradiography-Fluorescence In Situ Hybridization. Appl. Environ. Microbiol, 1641-1650.es_CO
    dc.relation.referencesKinner, N. D. (1985). An electron microscopic evaluation of bacteria inhabiting rotating biological contactor biofilmsduring various loading conditions. Environmental Technology Letters, 455-466.es_CO
    dc.relation.referencesKulikowska, D. T. (2010). Municipal landfill leachate nitrification in RBC biofilm – Process efficiency and molecular analysis of microbial structure. Bioresource Technology, 3400–3405.es_CO
    dc.relation.referencesLabella, S. T. (1972). Treatment of Winery Wastes by Aerated Lagoon, Activated Sludge, and Rotating Biological Contractor. In: Proceedings of the 27th Industrial Waste Conference, 803–881.es_CO
    dc.relation.referencesLeenen, E. d. (1996). CHARACTERISTICS OF AND SELECTION CRITERIA FOR SUPPORT MATERIALS FOR CELL IMMOBILIZATION IN WASTEWATER TREATMENT. Wat. Res., 2985-2996.es_CO
    dc.relation.referencesLeslie Grady, C. P., Daigger, G. T., Love, N. G., Filipe, C., D., & M. (2011). Biological Wastewater Treatment. Londres: Taylor and Francis Group, LLC.es_CO
    dc.relation.referencesLi, N., Zeng, W., Yang, Y., Wang, B., Li, Z., & Peng, Y. (2019). Oxygen mass transfer and post-denitrification in a modified rotating drum biological contactor. Biochemical Engineering Journal , 48–56.es_CO
    dc.relation.referencesLiu, S., Yang, F., Xue, Y., Gong, Z., Chen, H., Wang, T., & Su, Z. (2008). Evaluation of oxygen adaptation and identification of functional bacteria composition for anammox consortium in non-woven biological rotating contactor. Bioresource Technology, 8273–8279.es_CO
    dc.relation.referencesLogan, D. R. (1998). A CONCEPTUAL MODEL DESCRIBING MACROMOLECULE DEGRADATION BY SUSPENDED CULTURES AND BIOFILMS. War. Sci. Tech., 231-234.es_CO
    dc.relation.referencesLu, C. L. (1997). Temperature effects on the performance of an anaerobic rotating biological contactor. Environmental technology, 711-719.es_CO
    dc.relation.referencesMalachova, K. Z. (2013). Biodegradation and detoxification potential of rotating biological contactor (RBC) with Irpex lacteus for remediation of dyecontaining wastewater. Water Research, 7143-7148.es_CO
    dc.relation.referencesMarc Strous, J. A.-S. (1999). Missing lithotroph identified as new planctomycete . Nature, 446–449.es_CO
    dc.relation.referencesMark J. Laquidara, F. C. (1986). Development of Biofilm, Operating Characteristics and Operational Control in the Anaerobic Rotating Biological Contactor Process. Water Pollution Control Federation, 107-114.es_CO
    dc.relation.referencesMatheickal, J. T. (1991). Sorción y desorción de Cu (II) por Ganoderma Lucidum. Water Quality Research Journal, 187-200.es_CO
    dc.relation.referencesMathure, P., & Patwardhan, A. (2005). Comparison of mass transfer efficiency in horizontal rotating packed beds and rotating biological contactors. Journal of Chemical Technology and Biotechnology, 413–419.es_CO
    dc.relation.referencesMba, D. R. (1999). MECHANICAL REDESIGN OF THE ROTATING BIOLOGICAL CONTACTOR. Wat. Res., 3679±3688.es_CO
    dc.relation.referencesMetcalf, & Eddy. (1995). Ingenieria de Aguas Residuales. Madrid: Mc GRAWHILL/INTERAMERICANA DE ESPAÑA, S.A.es_CO
    dc.relation.referencesMittal, V., & Singh, A. K. (2012). Characterization of biofilm of a rotating biological. Water Science & Technology, 429-437.es_CO
    dc.rights.accessrightshttp://purl.org/coar/access_right/c_abf2es_CO
    dc.type.coarversionhttp://purl.org/coar/resource_type/c_2df8fbb1es_CO
    Aparece en las colecciones: Ingeniería Ambiental

    Ficheros en este ítem:
    Fichero Descripción Tamaño Formato  
    González_2019_TG.pdfGonzález_2019_TG1,12 MBAdobe PDFVisualizar/Abrir


    Los ítems de DSpace están protegidos por copyright, con todos los derechos reservados, a menos que se indique lo contrario.